Below is an NMOS logic circuit. For all of the MOSFETS assume V = 1 V and k = 50 mA/V². th 5V c. Indicate and verify the state of each MOSFET and V for the following input 0 5V combinations. Fill-out the table below for each assumed state of the MOSFET for every input combination. Use R approximation for linear operation and three significant R₂ = 5600 ds(on) V figures for the voltages. $7 M3 EXAMPLE HOW TO ANSWER M₁ M₂ B M1 is assumed to be in saturation. If Vgs = 2 V, Vds = 4V, Vds > Vgs - Vth 4>2-1 4> 1 (ok) Vgs > Vth (2>1) A M2 state M3 state OV 5 V R₁ = 4700 www. B OV OV M1 state
Below is an NMOS logic circuit. For all of the MOSFETS assume V = 1 V and k = 50 mA/V². th 5V c. Indicate and verify the state of each MOSFET and V for the following input 0 5V combinations. Fill-out the table below for each assumed state of the MOSFET for every input combination. Use R approximation for linear operation and three significant R₂ = 5600 ds(on) V figures for the voltages. $7 M3 EXAMPLE HOW TO ANSWER M₁ M₂ B M1 is assumed to be in saturation. If Vgs = 2 V, Vds = 4V, Vds > Vgs - Vth 4>2-1 4> 1 (ok) Vgs > Vth (2>1) A M2 state M3 state OV 5 V R₁ = 4700 www. B OV OV M1 state
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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Transcribed Image Text:Below is an NMOS logic circuit. For all of the MOSFETS assume V = 1 V and k = 50 mA/V².
th
5V
C. Indicate and verify the state of each MOSFET and V for the following input
0
5V
combinations. Fill-out the table below for each assumed state of the MOSFET for every
input combination. Use R approximation for linear operation and three significant
R₂ = 5600
ds (on)
R₁ = 4700
V₂
figures for the voltages.
M3
3
EXAMPLE HOW TO ANSWER
Ao M₁
M₂
B
M1 is assumed to be in saturation.
If Vgs = 2 V, Vds = 4V,
Vds > Vgs - Vth
4>2-1
4> 1 (ok)
Vgs > Vth (2>1)
A
M2 state
M3 state
V.
OV
5 V
B
OV
OV
M1 state
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